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On the influence of the incident photon energy on the radiation damage in crystalline biological samples

机译:关于入射光子能量对晶体生物样品中辐射损伤的影响

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摘要

Two series of complete and highly redundant data sets were collected at wavelengths of 1.00 and 2.00 angstrom on a cadmium derivative of porcine pancreatic elastase (PPE). Radiation damage to the sample was evaluated qualitatively by inspecting consecutive difference electron density maps during the course of the experiment. The nature of the radiation damage was found to be identical at both wavelengths and was localized primarily at the four disulfide bridges of PPE, the cadmium site and the two methionine residues. For a quantitative examination of the radiation damage, the decrease in the peak height of the cadmium ion in various electron density maps was exploited. Again, no significant difference in radiation damage between the two wavelengths was observed. This can be rationalized by considering the wavelength dependencies of the number of diffracted photons versus the number of absorbed photons and the energy deposited in the crystal by the latter.
机译:在猪胰弹性蛋白酶(PPE)的镉衍生物上,分别在1.00和2.00埃的波长下收集了两个系列的完整且高度冗余的数据集。通过在实验过程中检查连续的差异电子密度图来定性评估样品的辐射损伤。发现辐射损伤的性质在两个波长上都相同,并且主要定位在PPE的四个二硫键,镉位点和两个蛋氨酸残基上。为了定量检查辐射损伤,利用了各种电子密度图中镉离子的峰高降低。同样,在两个波长之间没有观察到辐射损伤的显着差异。这可以通过考虑衍射光子数与吸收光子数的波长依赖性以及由后者沉积在晶体中的能量来合理化。

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